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Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes

The majority of lizards classified in the superfamily Iguanoidea have an XX/XY sex-determination system in which sex-chromosomal linkage shows homology with chicken (Gallus gallus) chromosome 15 (GGA15). However, the genomics of sex chromosomes remain largely unexplored owing to the presence of homo...

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Autores principales: Koomgun, Tassika, Laopichienpong, Nararat, Singchat, Worapong, Panthum, Thitipong, Phatcharakullawarawat, Rattanin, Kraichak, Ekaphan, Sillapaprayoon, Siwapech, Ahmad, Syed Farhan, Muangmai, Narongrit, Peyachoknagul, Surin, Duengkae, Prateep, Ezaz, Tariq, Srikulnath, Kornsorn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7606854/
https://www.ncbi.nlm.nih.gov/pubmed/33193634
http://dx.doi.org/10.3389/fgene.2020.556267
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author Koomgun, Tassika
Laopichienpong, Nararat
Singchat, Worapong
Panthum, Thitipong
Phatcharakullawarawat, Rattanin
Kraichak, Ekaphan
Sillapaprayoon, Siwapech
Ahmad, Syed Farhan
Muangmai, Narongrit
Peyachoknagul, Surin
Duengkae, Prateep
Ezaz, Tariq
Srikulnath, Kornsorn
author_facet Koomgun, Tassika
Laopichienpong, Nararat
Singchat, Worapong
Panthum, Thitipong
Phatcharakullawarawat, Rattanin
Kraichak, Ekaphan
Sillapaprayoon, Siwapech
Ahmad, Syed Farhan
Muangmai, Narongrit
Peyachoknagul, Surin
Duengkae, Prateep
Ezaz, Tariq
Srikulnath, Kornsorn
author_sort Koomgun, Tassika
collection PubMed
description The majority of lizards classified in the superfamily Iguanoidea have an XX/XY sex-determination system in which sex-chromosomal linkage shows homology with chicken (Gallus gallus) chromosome 15 (GGA15). However, the genomics of sex chromosomes remain largely unexplored owing to the presence of homomorphic sex chromosomes in majority of the species. Recent advances in high-throughput genome complexity reduction sequencing provide an effective approach to the identification of sex-specific loci with both single-nucleotide polymorphisms (SNPs) and restriction fragment presence/absence (PA), and a better understanding of sex chromosome dynamics in Iguanoidea. In this study, we applied Diversity Arrays Technology (DArTseq(TM)) in 29 phenotypic sex assignments (14 males and 15 females) of green iguana (Iguana iguana). We confirmed a male heterogametic (XX/XY) sex determination mode in this species, identifying 29 perfectly sex-linked SNP/PA loci and 164 moderately sex-linked SNP/PA loci, providing evidence probably indicative of XY recombination. Three loci from among the perfectly sex-linked SNP/PA loci showed partial homology with several amniote sex chromosomal linkages. The results support the hypothesis of an ancestral super-sex chromosome with overlaps of partial sex-chromosomal linkages. However, only one locus among the moderately sex-linked loci showed homology with GGA15, which suggests that the specific region homologous to GGA15 was located outside the non-recombination region but in close proximity to this region of the sex chromosome in green iguana. Therefore, the location of GGA15 might be further from the putative sex-determination locus in green iguana. This is a paradigm shift in understanding linkages on homomorphic X and Y sex chromosomes. The DArTseq platform provides an easy-to-use strategy for future research on the evolution of sex chromosomes in Iguanoidea, particularly for non-model species with homomorphic or highly cryptic sex chromosomes.
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spelling pubmed-76068542020-11-13 Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes Koomgun, Tassika Laopichienpong, Nararat Singchat, Worapong Panthum, Thitipong Phatcharakullawarawat, Rattanin Kraichak, Ekaphan Sillapaprayoon, Siwapech Ahmad, Syed Farhan Muangmai, Narongrit Peyachoknagul, Surin Duengkae, Prateep Ezaz, Tariq Srikulnath, Kornsorn Front Genet Genetics The majority of lizards classified in the superfamily Iguanoidea have an XX/XY sex-determination system in which sex-chromosomal linkage shows homology with chicken (Gallus gallus) chromosome 15 (GGA15). However, the genomics of sex chromosomes remain largely unexplored owing to the presence of homomorphic sex chromosomes in majority of the species. Recent advances in high-throughput genome complexity reduction sequencing provide an effective approach to the identification of sex-specific loci with both single-nucleotide polymorphisms (SNPs) and restriction fragment presence/absence (PA), and a better understanding of sex chromosome dynamics in Iguanoidea. In this study, we applied Diversity Arrays Technology (DArTseq(TM)) in 29 phenotypic sex assignments (14 males and 15 females) of green iguana (Iguana iguana). We confirmed a male heterogametic (XX/XY) sex determination mode in this species, identifying 29 perfectly sex-linked SNP/PA loci and 164 moderately sex-linked SNP/PA loci, providing evidence probably indicative of XY recombination. Three loci from among the perfectly sex-linked SNP/PA loci showed partial homology with several amniote sex chromosomal linkages. The results support the hypothesis of an ancestral super-sex chromosome with overlaps of partial sex-chromosomal linkages. However, only one locus among the moderately sex-linked loci showed homology with GGA15, which suggests that the specific region homologous to GGA15 was located outside the non-recombination region but in close proximity to this region of the sex chromosome in green iguana. Therefore, the location of GGA15 might be further from the putative sex-determination locus in green iguana. This is a paradigm shift in understanding linkages on homomorphic X and Y sex chromosomes. The DArTseq platform provides an easy-to-use strategy for future research on the evolution of sex chromosomes in Iguanoidea, particularly for non-model species with homomorphic or highly cryptic sex chromosomes. Frontiers Media S.A. 2020-10-20 /pmc/articles/PMC7606854/ /pubmed/33193634 http://dx.doi.org/10.3389/fgene.2020.556267 Text en Copyright © 2020 Koomgun, Laopichienpong, Singchat, Panthum, Phatcharakullawarawat, Kraichak, Sillapaprayoon, Ahmad, Muangmai, Peyachoknagul, Duengkae, Ezaz and Srikulnath. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Koomgun, Tassika
Laopichienpong, Nararat
Singchat, Worapong
Panthum, Thitipong
Phatcharakullawarawat, Rattanin
Kraichak, Ekaphan
Sillapaprayoon, Siwapech
Ahmad, Syed Farhan
Muangmai, Narongrit
Peyachoknagul, Surin
Duengkae, Prateep
Ezaz, Tariq
Srikulnath, Kornsorn
Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes
title Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes
title_full Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes
title_fullStr Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes
title_full_unstemmed Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes
title_short Genome Complexity Reduction High-Throughput Genome Sequencing of Green Iguana (Iguana iguana) Reveal a Paradigm Shift in Understanding Sex-Chromosomal Linkages on Homomorphic X and Y Sex Chromosomes
title_sort genome complexity reduction high-throughput genome sequencing of green iguana (iguana iguana) reveal a paradigm shift in understanding sex-chromosomal linkages on homomorphic x and y sex chromosomes
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7606854/
https://www.ncbi.nlm.nih.gov/pubmed/33193634
http://dx.doi.org/10.3389/fgene.2020.556267
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